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- W2016069668 abstract "The structures and energies of grain boundaries in an fcc model metal intended to represent gamma-iron are presented. Symmetric and asymmetric tilt boundaries in the low index planes (100), (110), and (111) are studied. Low angle tilt boundaries are studied for each orientation of the lattice face planes since their structures can be represented by edge dislocation arrays, and their energies can be described by the Read-Shockley formula (1). High angle tilt boundaries having structures simulated by arrays of cavity defects and energies not adequately described by the Read-Shockley formula are also studied. Discrete lattice theory is utilized in the quasi-dynamic mode of computer experimentation. Most of the studies are generated using a symmetric nearest neighbor interatomic potential function, but in one case the structure is compared with that calculated using a non-central potential function so that the sensitivity of structure to the type of interatomic potential function used can be seen. The restructuring of the core region of tilt boundaries by the addition of small amounts of impurity atoms is discussed. Comparison of the results of these studies with experimental results lends further credibility to computer experimentation as a method of gaining insight to basic metallurgical phenomena." @default.
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- W2016069668 title "Grain boundary structures and energies in FCC-iron" @default.
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